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Regenerative abilities of mesenchymal stem cells through mitochondrial transfer

机译:间充质干细胞通过线粒体转移的再生能力

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摘要

Abstract The past decade has witnessed an upsurge in studies demonstrating mitochondrial transfer as one of the emerging mechanisms through which mesenchymal stem cells (MSCs) can regenerate and repair damaged cells or tissues. It has been found to play a critical role in healing several diseases related to brain injury, cardiac myopathies, muscle sepsis, lung disorders and acute respiratory disorders. Several studies have shown that various mechanisms are involved in mitochondrial transfer that includes tunnel tube formation, micro vesicle formation, gap junctions, cell fusion and others modes of transfer. Few studies have investigated the mechanisms that contribute to mitochondrial transfer, primarily comprising of signaling pathways involved in tunnel tube formation that facilitates tunnel tube formation for movement of mitochondria from one cell to another. Various stress signals such as release of damaged mitochondria, mtDNA and mitochondrial products along with elevated reactive oxygen species levels trigger the transfer of mitochondria from MSCs to recipient cells. However, extensive cell signaling pathways that lead to mitochondrial transfer from healthy cells are still under investigation and the changes that contribute to restoration of mitochondrial bioenergetics in recipient cells remain largely elusive. In this review, we have discussed the phenomenon of mitochondrial transfer from MSCs to neighboring stressed cells, and how this aids in cellular repair and regeneration of different organs such as lung, heart, eye, brain and kidney. The potential scope of mitochondrial transfer in providing novel therapeutic strategies for treatment of various pathophysiological conditions has also been discussed.
机译:摘要过去十年目睹了在分解电池的研究中证明线粒体转移的高潮,作为间充质干细胞(MSCs)可以再生和修复受损细胞或组织的一种新兴机制。已经发现它在治疗与脑损伤,心肌肌病,肌肉败血症,肺病和急性呼吸障碍相关的几种疾病方面发挥着关键作用。有几项研究表明,各种机制参与了线粒体转移,包括隧道管形成,微囊囊形成,间隙连接,细胞融合等转移模式。少数研究研究了有助于线粒体转移的机制,主要包括涉及隧道管形成中的信号通路,便于隧道管形成用于从一个细胞到另一个细胞的线粒体移动。各种应力信号,如释放受损的线粒体,MTDNA和线粒体产品以及升高的反应性氧物质水平触发线粒体从MSCS转移到受体细胞。然而,导致来自健康细胞的线粒体转移的广泛的细胞信号传导途径仍在调查中,并且有助于恢复受体细胞中线粒体生物植物的变化仍然很大程度上是难以捉摸的。在本次综述中,我们已经讨论了从MSCS到相邻的压力细胞的线粒体转移的现象,以及这辅助肺,心脏,眼睛,脑和肾等不同器官的细胞修复和再生的艾滋病。还讨论了提供了用于治疗各种病理生理病症的新疗法策略的线粒体转移的潜在范围。

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